基于空载电动势空间矢量轨迹分析的同步发电机静、动转子偏心在线检测与判别

C. Bruzzese, A. Giordani, E. Santini
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引用次数: 25

摘要

本文研究了静、动转子偏心对凸极同步发电机外部电变量的不同影响。过去主要研究大型水轮发电机的气隙不规则性及其监测技术(并有实际应用),但船上同步发电机也发现了类似的问题。后者需要一种不同的方法,即非侵入性监测。通过对故障电机进行参数化三维有限元分析,建立了包含电感的动态模型,对某型船用发电机进行了静态和动态转子偏心数值模拟。利用FFT和空间矢量方法分析了电流、电压和空载电动势稳态波形。空载电动势空间矢量的幅值随绝对偏心量的增大而增大,是一种灵敏的故障指示器;此外,利用空间矢量轨迹椭圆度可以区分静态偏心率和动态偏心率。
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Static and dynamic rotor eccentricity on-line detection and discrimination in synchronous generators By No-Load E.M.F. space vector loci analysis
In this paper a study about the different effects of static and dynamic rotor eccentricities on the external electric variables of a salient-pole synchronous generator is presented. Air-gap irregularities and related monitoring techniques have been studied in the past mainly about large hydro-generators (with practical applications), but similar problems have been recognized for on-board ship synchronous generators. These latter require a different approach, i.e. non-invasive monitoring. Static and dynamic rotor eccentricities were simulated in this work, for a ship-application sized generator, by using a dynamic model including inductances computed by parametric 3D FEM analysis of the faulty machine. Current, voltage, and no-load e.m.f. steady-state waveforms were analyzed by FFT and space-vector approach. No-load e.m.f. space vector is a sensitive fault indicator since its amplitude largely increases with the level of absolute eccentricity; furthermore, it is possible to discriminate the static eccentricity from the dynamic eccentricity utilizing the space vector loci ovality.
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